Instead of the monolothic `depsgraph_type.hh` header that includes most types used in the despgraph, just add includes where they are actually necessary. Also remove the `using` keywords for `std` types. The lack of specificity isn't considered good practice nowadays. Removing unnecessary transitive includes can help improve compile times because the time spent parsing headers decreases. Using the "include what you use" pattern makes futher improvements much easier too, since it the path to further reduce transitive includes becomes much clearer. Pull Request: https://projects.blender.org/blender/blender/pulls/133749
153 lines
4.0 KiB
C++
153 lines
4.0 KiB
C++
/* SPDX-FileCopyrightText: 2017 Blender Authors
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*
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* SPDX-License-Identifier: GPL-2.0-or-later */
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/** \file
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* \ingroup depsgraph
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*/
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#include "DEG_depsgraph_debug.hh"
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#include <algorithm>
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#include <cstdarg>
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#include "BLI_compiler_attrs.h"
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#include "BLI_math_base.h"
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#include "intern/depsgraph.hh"
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#include "intern/node/deg_node_id.hh"
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#include "DNA_ID.h"
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#define NL "\r\n"
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namespace deg = blender::deg;
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namespace blender::deg {
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namespace {
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struct DebugContext {
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FILE *file;
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const Depsgraph *graph;
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const char *label;
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const char *output_filename;
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};
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struct StatsEntry {
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const IDNode *id_node;
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double time;
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};
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/* TODO(sergey): De-duplicate with graphviz relation debugger. */
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void deg_debug_fprintf(const DebugContext &ctx, const char *fmt, ...) ATTR_PRINTF_FORMAT(2, 3);
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void deg_debug_fprintf(const DebugContext &ctx, const char *fmt, ...)
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{
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va_list args;
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va_start(args, fmt);
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vfprintf(ctx.file, fmt, args);
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va_end(args);
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}
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inline double get_node_time(const DebugContext & /*ctx*/, const Node *node)
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{
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/* TODO(sergey): Figure out a nice way to define which exact time
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* we want to show. */
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return node->stats.current_time;
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}
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bool stat_entry_comparator(const StatsEntry &a, const StatsEntry &b)
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{
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return a.time > b.time;
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}
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std::string gnuplotify_id_code(const std::string &name)
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{
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return std::string("") + name[0] + name[1];
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}
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std::string gnuplotify_name(const std::string &name)
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{
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std::string result;
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const int length = name.length();
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for (int i = 0; i < length; i++) {
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const char ch = name[i];
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if (ch == '_') {
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result += R"(\\\)";
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}
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result += ch;
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}
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return result;
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}
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void write_stats_data(const DebugContext &ctx)
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{
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/* Fill in array of all stats which are to be displayed. */
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Vector<StatsEntry> stats;
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stats.reserve(ctx.graph->id_nodes.size());
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for (const IDNode *id_node : ctx.graph->id_nodes) {
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const double time = get_node_time(ctx, id_node);
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if (time == 0.0) {
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continue;
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}
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StatsEntry entry;
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entry.id_node = id_node;
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entry.time = time;
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stats.append(entry);
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}
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/* Sort the data. */
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std::sort(stats.begin(), stats.end(), stat_entry_comparator);
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/* We limit number of entries, otherwise things become unreadable. */
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stats.resize(min_ii(stats.size(), 32));
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std::reverse(stats.begin(), stats.end());
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/* Print data to the file stream. */
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deg_debug_fprintf(ctx, "$data << EOD" NL);
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for (const StatsEntry &entry : stats) {
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deg_debug_fprintf(ctx,
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"\"[%s] %s\",%f" NL,
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gnuplotify_id_code(entry.id_node->id_orig->name).c_str(),
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gnuplotify_name(entry.id_node->id_orig->name + 2).c_str(),
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entry.time);
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}
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deg_debug_fprintf(ctx, "EOD" NL);
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}
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void deg_debug_stats_gnuplot(const DebugContext &ctx)
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{
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/* Data itself. */
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write_stats_data(ctx);
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/* Optional label. */
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if (ctx.label && ctx.label[0]) {
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deg_debug_fprintf(ctx, "set title \"%s\"" NL, ctx.label);
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}
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/* Rest of the commands.
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* TODO(sergey): Need to decide on the resolution somehow. */
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deg_debug_fprintf(ctx, "set terminal pngcairo size 1920,1080" NL);
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deg_debug_fprintf(ctx, "set output \"%s\"" NL, ctx.output_filename);
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deg_debug_fprintf(ctx, "set grid" NL);
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deg_debug_fprintf(ctx, "set datafile separator ','" NL);
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deg_debug_fprintf(ctx, "set style fill solid" NL);
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deg_debug_fprintf(ctx,
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"plot \"$data\" using "
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"($2*0.5):0:($2*0.5):(0.2):yticlabels(1) "
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"with boxxyerrorbars t '' lt rgb \"#406090\"" NL);
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}
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} // namespace
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} // namespace blender::deg
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void DEG_debug_stats_gnuplot(const Depsgraph *depsgraph,
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FILE *fp,
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const char *label,
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const char *output_filename)
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{
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if (depsgraph == nullptr) {
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return;
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}
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deg::DebugContext ctx;
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ctx.file = fp;
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ctx.graph = (deg::Depsgraph *)depsgraph;
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ctx.label = label;
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ctx.output_filename = output_filename;
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deg::deg_debug_stats_gnuplot(ctx);
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}
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